| Literature DB >> 29801997 |
Gang Wang1, Siew Pheng Lim1, Yen-Liang Chen2, Jürg Hunziker3, Ranga Rao1, Feng Gu2, Cheah Chen Seh1, Nahdiyah Abdul Ghafar1, Haoying Xu1, Katherine Chan2, Xiaodong Lin4, Oliver L Saunders4, Martijn Fenaux4, Weidong Zhong4, Pei-Yong Shi5, Fumiaki Yokokawa6.
Abstract
To identify a potent and selective nucleoside inhibitor of dengue virus RNA-dependent RNA polymerase, a series of 2'- and/or 4'-ribose sugar modified uridine nucleoside phosphoramidate prodrugs and their corresponding triphosphates were synthesized and evaluated. Replacement of 2'-OH with 2'-F led to be a poor substrate for both dengue virus and human mitochondrial RNA polymerases. Instead of 2'-fluorination, the introduction of fluorine at the ribose 4'-position was found not to affect the inhibition of the dengue virus polymerase with a reduction in uptake by mitochondrial RNA polymerase. 2'-C-ethynyl-4'-F-uridine phosphoramidate prodrug displayed potent anti-dengue virus activity in the primary human peripheral blood mononuclear cell-based assay with no significant cytotoxicity in human hepatocellular liver carcinoma cell lines and no mitochondrial toxicity in the cell-based assay using human prostate cancer cell lines.Entities:
Keywords: Dengue virus; Mitochondrial RNA polymerase; Nucleoside; Phosphoramidate prodrug; RNA-dependent RNA polymerase
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Year: 2018 PMID: 29801997 DOI: 10.1016/j.bmcl.2018.04.069
Source DB: PubMed Journal: Bioorg Med Chem Lett ISSN: 0960-894X Impact factor: 2.823